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Alphavirus-vectored hemagglutinin subunit vaccine provides partial protection against heterologous challenge in pigs

机译:alphavirus矢量血凝素亚基疫苗为猪的异源挑战提供部分保护

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Influenza A virus in swine (IAV-S) is an important pathogen in pigs in the United States, in addition to posing a potential risk to humans through zoonotic events. Intervention strategies continue to be explored to better control virus circulation. Improved surveillance efforts has led to significantly increased sequence data available on circulating strains, vastly improving our understanding of the genetic and antigenic diversity of IAV-S. IAV-S in North America is characterized by repeated spillover events of human viruses into pigs followed by genetic and antigenic diversification. An important gap that needs to be addressed is our understanding of the role that various vaccine platforms have on efficacy against antigenically heterologous challenge. Currently licensed vaccines often update their components to adapt to a dynamic antigenic landscape and newly developed technologies continue to be approved. Hence, it remains critical to test the performance of vaccines against challenge with antigenically distinct viruses. We tested the level of protection conferred by an alphavirus-vectored hemagglutinin (HA) subunit vaccine, delivered as a monovalent or bivalent formulation, against challenge with IAV-S. Monovalent alphavirus-vectored HA vaccines provided efficient protection against challenge with viruses with matched and mismatched HA, although in one mismatched HA challenge group there was a trend for reduced protection. A bivalent vaccine, in which two HA's were simultaneously delivered, was effective in producing antibody response against both antigens and provided protection against challenge. The alphavirus platform is a promising new technology available to swine producers to help reduce the burden of disease caused by IAV-S. (C) 2019 Published by Elsevier Ltd.
机译:流感猪(IAV-S)中的病毒是美国猪的重要病原体,除了通过人畜共患事件对人类造成潜在风险。干预策略继续探讨更好地控制病毒流通。改进的监视努力导致循环菌株的序列数据显着增加,大大提高了我们对IAV-S遗传和抗原多样性的理解。 IAV-S在北美的特点是重复溢出人类病毒进入猪的溢出事件,然后是遗传和抗原多样化。需要解决的一个重要差距是我们了解各种疫苗平台对抗抗原异源挑战的疗效的作用。目前许可的疫苗经常更新他们的组件,以适应动态抗原景观,新开发的技术继续得到批准。因此,在抗原性不同病毒测试患疫苗的性能仍然至关重要。我们测试了alphaVirus血凝素(HA)亚基疫苗赋予的保护水平,作为一价或二价制剂递送,反对IAV-S攻击。传染料甲疫苗的单价alphavirus提供了有效的防止攻击与匹配和不匹配的病毒的攻击,尽管在一个不匹配的HA挑战组中,但仍有降低保护的趋势。一双偶疫苗,其中同时递送了两只公顷,在产生对抗原的抗体反应并提供防止攻击的保护。 AlphaVirus平台是猪生产商可用的有希望的新技术,以帮助减少IAV-S引起的疾病的负担。 (c)2019年由elestvier有限公司发布

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